Solenoid-Actuated Fluid Control Valve Assembly
A valve assembly includes a valve base having a tubular section with a longitudinal bore formed therein, a fluid inlet port and a common port with an internal passageway therebetween. A solenoid coil is adapted to generate a magnetic flux and includes a longitudinal axis and a bore coaxial therewith. The valve assembly further includes an orifice piece positioned within the longitudinal bore of the valve base. The orifice piece includes a central passageway with a first end and a second end. A plunger is movable within the longitudinal bore between a first de-actuated position and a second actuated position.
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The present application relates in general to solenoid-actuated fluid control valves for use in fluid flow regulation systems, such as those that require precise control of the rate of fluid flow, including but not limited to pneumatic and hydraulic regulation.
A three-way proportional valve assembly includes a valve base having a tubular section with a longitudinal bore formed therein, a fluid inlet port and a common port with an internal passageway therebetween. A solenoid coil is adapted to generate a magnetic flux and includes a longitudinal axis and a coaxial bore. The valve assembly further includes an orifice piece positioned within the longitudinal bore of the valve base. The orifice piece includes a central passageway with a first end and a second end. A channel is formed between an outer surface of the orifice piece and the longitudinal bore of the tubular section to allow fluid transfer from the central passageway at a first end of the orifice piece to the common port of the valve base. A magnetic top piece is positioned over a top open end of the tubular section and includes a top port formed therein. Further, a plunger having a first end, a second end, and a cylindrical outer surface is provided. The plunger is movable within the longitudinal bore between a first de-actuated position wherein the first end of the plunger closes the top port formed in the magnetic top piece and a second actuated position wherein the second end of the plunger contacts the orifice piece. A flux conductor is also provided to complete valve assembly. The valve assembly may also include a biasing member, such as a spring, positioned between the orifice piece and plunger for biasing the plunger so it closes the top port when the valve is in a de-actuated state.
DETAILED DESCRIPTION OF THE EMBODIMENTSInitially with reference to
In general, valve assembly 10 includes a valve base 50 having a body section 53 and tubular section 55 extending from body section 53 with a longitudinal bore 57 formed therein. Tubular section 55 includes an upwardly extending annular flange 59 and an annular ledge 60 for receiving a magnetic top piece 62. Inlet port 20 is formed in body section 53 and is in fluid communication with longitudinal bore 57 of tubular section 55. In addition, common port 40 is formed within body portion 53. Common port 40 is in fluid communication with longitudinal bore 57 via an internal passageway 70. Valve base 50 may be formed of plastic, aluminum, machined steel, or the like. Valve base 50 further includes raised rings, 51 and 52, around intake port 20 and common port 40. Raised rings 51, 52 act as O-rings to create a seal against the surface of valve base 50.
A solenoid coil 75 is supported on a housing 76 and is adapted to generate a magnetic flux. Solenoid coil 75, installed in housing 76, surround tubular section 55 of valve base 50. Housing 76 includes a through hole 77 (best shown in
An orifice piece 80 (i.e. orifice) is positioned within longitudinal bore 57 of tubular section 55. In one embodiment, the orifice piece 80 may be snug-fitted within longitudinal bore 57 such as by press-fitting, threading, adhesive, or the like. As shown in detail in
Valve assembly 10 further includes magnetic top piece 62 positioned over tubular section 55 of valve base 50. One embodiment of magnetic top piece 62 is illustrated in detail in
As illustrated in
A flux conductor 160 is provided to complete valve assembly 10. As illustrated in detail in
The operation of valve assembly 10 will be described in connection with
When solenoid coil 75 is energized, as shown in
Therefore, when plunger 125 is pulled towards orifice piece 80, a gap 180 is created and top port 30 is opened, as shown in
In general, valve assembly 210 includes elements that correspond to those described in connection with
A solenoid coil is supported on a solenoid coil housing 276 and is adapted to generate a magnetic flux. Housing 276 is connected to electrical leads 279 which supply an electrical connection between the solenoid coil and a current control source (not shown). Further, an orifice piece 280 is positioned within the longitudinal bore of tubular section 255. Orifice piece 280 includes a first end 282 and a second end 284 with a central passageway 286 formed therein. A channel may be formed within an outer surface of orifice piece 280 to allow for fluid transfer from central passageway 286 at first end 282 of orifice piece 280 to common port 240. Orifice piece 280 may further include an annular depression 294 formed therein proximate to second end 284 to further facilitate fluid transfer to common port 240. Orifice piece 280 is formed of a ferromagnetic material.
As described with respect to valve assembly 10, valve assembly 210 similarly includes magnetic top piece 262 positioned over tubular section 255 of valve base 250. In general, magnetic top piece 262 is cylindrically shaped with an inner surface, an outer surface, a top wall with top port 230 formed therein. Magnetic top piece 262 also includes a bottom rim 314 received within upwardly extending annular flange 259 of tubular section 255 of valve base 250.
Valve assembly 210 includes a plunger 325, which is generally cylindrical in shape. Plunger 325 is shown in detail in
Valve assembly 410 is three-way proportional valve having three ports including inlet port 420 through which fluid enters valve assembly 410, a top port 430, and a common port 440 which common to inlet port 420 and top port 430. Valve assembly 410 is similar to valve assembly 10 and will be described with reference to alternate features only.
Valve assembly 410 includes a magnetic top piece 462 positioned over tubular section 455 of valve base 450. In general, magnetic top piece 462 is cylindrically shaped with a top wall 510 with top port 430, formed therein. Magnetic top piece 462 also includes a bottom rim 514 and a disk-shaped rim portion 517. Bottom rim 514 of magnetic top piece 462 extends below disk-shaped rim portion 517 is received within upwardly extending annular flange 459 of tubular section 455 of valve base 450. Disk-shaped rim portion 517 is adjacent to solenoid coil housing 476 and may abut or is adjacent to upwardly extending annular flange 459. In an assembled configuration, magnetic top piece 462 is held in place by and is in contact with top section 562 of flux conductor 560.
Valve assembly 410 includes a plunger 525, which is generally cylindrical in shape. Plunger 525 is shown in
A biasing member, such as spring 540, is positioned between plunger 525 and magnetic top piece 462, thereby biasing plunger 525 towards orifice piece 480 and maintaining space 550 when valve assembly 10 is in a de-actuated state as shown in
Valve assembly 610 is a two-way proportional valve having two ports including inlet port 620 through which fluid enters valve assembly 610 and an outlet port 640. Valve assembly 610 includes a magnetic top piece 662 positioned over tubular section 655 of valve base 650. In general, magnetic top piece 662 is cylindrically shaped with a solid top wall 710. Magnetic top piece 662 also includes a bottom rim 714 and a disk-shaped rim portion 717. Bottom rim 714 of magnetic top piece 662 extends below disk-shaped rim portion 717 is received within upwardly extending annular flange 659 of tubular section 655 of valve base 650. Disk-shaped rim portion 717 is adjacent to solenoid coil housing 676 and may abut or is adjacent to upwardly extending annular flange 659. In an assembled configuration, magnetic top piece 662 is held in place by and is in contact with top section 762 of flux conductor 760.
Valve assembly 610 includes a plunger 725, which is generally cylindrical in shape. Plunger 725 includes axial ends 728 and 730 and a cylindrical side wall 732. Plunger 725 may be formed of magnetic steel. In the embodiment shown, axial end 728 includes a flat surface and axial end 730 includes a projection 738, as shown in
A biasing member, such as spring 740, is positioned between plunger 725 and magnetic top piece 662, thereby biasing plunger 725 towards orifice piece 680 and maintaining space 750 when valve assembly 610 is in a de-actuated state as shown in
Although, for convenience, the invention has been described primarily with reference to several specific embodiments, it will be apparent to those of ordinary skill in the art that the valve and the components thereof can be modified without departing from the spirit and scope of the invention as claimed.
Claims
1. A valve assembly comprising:
- a valve base including a tubular section with a longitudinal bore formed therein, a fluid inlet port and a common port with an internal passageway therebetween;
- a solenoid coil housing, having a longitudinal axis and a bore coaxial therewith;
- an orifice piece positioned within the longitudinal bore of the valve base, said orifice piece defining a central passageway and having a first end and a second end, wherein a channel is formed between an outer surface of the orifice piece and said longitudinal bore to allow fluid transfer from the central passageway at the first end of the orifice piece to the common port of the valve base;
- a magnetic top piece positioned over a top open end of the tubular section;
- a plunger having a first end, a second end, a cylindrical outer surface and fluid flow path formed between said first end to said second end, said plunger being movable within the longitudinal bore between a de-actuated position and an actuated position; and
- a flux conductor.
2. The valve assembly according to claim 1 wherein said magnetic top piece includes a top port formed therein and wherein said first end of said plunger is adapted to abut said magnetic top piece thereby closing off the top port and preventing fluid from flowing through top port.
3. The valve assembly according to claim 2, further comprises a biasing member for biasing the plunger so it closes the top port when the valve is in a de-actuated state.
4. The valve assembly according to claim 2, further comprises a biasing member for biasing the plunger so it contacts the first end of the orifice piece when the valve is in a de-actuated state.
5. The valve assembly according to claim 2, wherein the magnetic top piece is cylindrically shaped with an inner surface, an outer surface, a top wall with said top port formed therein, a bottom rim and a disk-shaped rim portion extending from said outer surface, wherein said plunger fits within the magnetic top piece such that a radial air gap exists between said inner surface and said plunger.
6. The valve assembly of claim 5 wherein the base further includes an upwardly extending flange extending from the tubular section, said upwardly extending flange forming an annular pocket into which said bottom rim of the magnetic top piece is received, wherein said disk-shaped rim portion is adjacent to said upwardly extending flange.
7. The valve assembly according to claim 1, wherein solenoid coil housing surrounds said tubular section of the valve base.
8. The valve assembly according to claim 1 wherein the flux conductor has a unitary C-shape construction with a top section, a bottom section, and a side section, wherein the bottom section is adapted to slide along valve base to be secured within an opening in valve base such that a portion of the tubular section of valve base fits within an opening in the flux conductor, wherein the flux conductor secures components of the valve assembly in an assembled configuration.
9. The valve assembly of claim 8, wherein the solenoid coil housing includes a raised section to be received within an opening in top section of flux conductor to further secure the valve assembly and restrict rotation of the solenoid coil housing.
10. A valve assembly comprising:
- a valve base including a tubular section with a longitudinal bore formed therein, a fluid inlet port and a common port with an internal passageway therebetween;
- a solenoid coil housing having a longitudinal axis and a bore coaxial therewith;
- a orifice piece positioned within the longitudinal bore of the valve base, said orifice piece defining a central passageway and having a first end and a second end, wherein a channel is formed between an outer surface of the orifice piece and said longitudinal bore to allow fluid transfer from the central passageway at the first end of the orifice piece to the common port of the valve base;
- a plunger having a first end, a second end, a cylindrical outer surface and fluid flow path formed between said first end to said second end, said plunger being movable within the longitudinal bore between a de-actuated position and an actuated position;
- a magnetic top piece positioned over a top open end of the tubular section, said magnetic top piece including a top port formed therein and wherein said first end of said plunger is adapted to abut said magnetic top piece thereby closing off the top port and preventing fluid from flowing through top port;
- a flux conductor; and
- a biasing member for biasing the plunger so it contacts the first end of the orifice piece when the valve is in a de-actuated state.
11. The valve assembly according to claim 10, wherein the magnetic top piece is cylindrically shaped with an inner surface, an outer surface, a top wall with said top port formed therein, a bottom rim and a disk-shaped rim portion extending from said outer surface, wherein said plunger fits within the magnetic top piece such that a radial air gap exists between said inner surface and said plunger.
12. The valve assembly of claim 11 wherein the base further includes an upwardly extending flange extending from the tubular section, said upwardly extending flange forming an annular pocket into which said bottom rim of the magnetic top piece is received, wherein said disk-shaped rim portion is adjacent to said upwardly extending flange.
13. The valve assembly according to claim 10, wherein solenoid coil housing surrounds said tubular section of the valve base.
14. The valve assembly according to claim 10 wherein the flux conductor has a unitary C-shape construction with a top section, a bottom section, and a side section, wherein the bottom section is adapted to slide along valve base to be secured within an opening in valve base such that a portion of the tubular section of valve base fits within an opening in the flux conductor, wherein the flux conductor secures components of the valve assembly in an assembled configuration.
15. The valve assembly of claim 14, wherein the solenoid coil housing includes a raised section to be received within an opening in top section of flux conductor to further secure the valve assembly and restrict rotation of the solenoid coil housing.
16. A valve assembly comprising:
- a valve base including a tubular section with a longitudinal bore formed therein, a fluid inlet port and a common port with an internal passageway therebetween;
- a solenoid coil having a longitudinal axis and a bore coaxial therewith;
- a orifice piece positioned within the longitudinal bore of the valve base, said orifice piece defining a central passageway and having a first end and a second end, wherein a channel is formed between an outer surface of the orifice piece and said longitudinal bore to allow fluid transfer from the central passageway at the first end of the orifice piece to the common port of the valve base;
- a plunger having a first end, a second end, a cylindrical outer surface and fluid flow path formed between said first end to said second end, said plunger being movable within the longitudinal bore between a de-actuated position and an actuated position;
- a magnetic top piece positioned over a top open end of the tubular section, said magnetic top piece including a top port formed therein and wherein said first end of said plunger is adapted to abut said magnetic top piece thereby closing off the top port and preventing fluid from flowing through top port;
- a flux conductor; and
- a biasing member for biasing the plunger so it closes the top port when the valve is in a de-actuated state.
17. The valve assembly according to claim 16, wherein the magnetic top piece is cylindrically shaped with an inner surface, an outer surface, a top wall with said top port formed therein, a bottom rim and a disk-shaped rim portion extending from said outer surface, wherein said plunger fits within the magnetic top piece such that a radial air gap exists between said inner surface and said plunger.
18. The valve assembly of claim 17 wherein the base further includes an upwardly extending flange extending from the tubular section, said upwardly extending flange forming an annular pocket into which said bottom rim of the magnetic top piece is received, wherein said disk-shaped rim portion is adjacent to said upwardly extending flange.
19. The valve assembly according to claim 16 wherein the flux conductor has a unitary C-shape construction with a top section, a bottom section, and a side section, wherein the bottom section is adapted to slide along valve base to be secured within an opening in valve base such that a portion of the tubular section of valve base fits within an opening in the flux conductor, wherein the flux conductor secures components of the valve assembly in an assembled configuration.
20. The valve assembly of claim 19, wherein the solenoid coil housing includes a raised section to be received within an opening in top section of flux conductor to further secure the valve assembly and restrict rotation of the solenoid coil housing.
Type: Application
Filed: Apr 10, 2015
Publication Date: Oct 13, 2016
Patent Grant number: 9879797
Applicant: IQ Valves (Melbourne, FL)
Inventors: Viraraghavan S. Kumar (Melbourne, FL), Alvaro Andres Reyes (Fort Lauderdale, FL), Sudhir S. Kulkarni (Rockledge, FL), Shailesh Pradhananga (Rockledge, FL)
Application Number: 14/683,809